Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle

The ongoing research work on electric vehicles (EVs) as well as the growing concern around the world to ensure a pollution-free environment is sure to lead to a significant increase in the number of EVs in the near future. The electrification of automobiles is an inevitable trend of future developme...

Full description

Saved in:
Bibliographic Details
Main Authors: Salma Sraidi, Mohamed Maaroufi
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Journal of Electrical and Computer Engineering
Online Access:http://dx.doi.org/10.1155/2022/5923568
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832565521456824320
author Salma Sraidi
Mohamed Maaroufi
author_facet Salma Sraidi
Mohamed Maaroufi
author_sort Salma Sraidi
collection DOAJ
description The ongoing research work on electric vehicles (EVs) as well as the growing concern around the world to ensure a pollution-free environment is sure to lead to a significant increase in the number of EVs in the near future. The electrification of automobiles is an inevitable trend of future development. However, the growth of EVs relies on several elements: autonomy, the charging practice and infrastructure, the price, and the high amount of energy needed for supplying EV. This tendency impacts several points in transportation such as the road infrastructure and electrical power network. The aim of this article is the integration of new energy power sources as a part of the microgrid (MG) to supply EV with dynamic wireless charging. The main goal is to establish an energy management strategy reducing the running cost. The purpose is suggested for two kinds of operation mode: relying only on the MG (island mode) or relying on the MG and the large grid (grid-connected). The optimization problem is solved on the basis of the particle swarm optimization (PSO) algorithm. We could note that the stability of the microgrid in the off-grid mode is better, when the load is close to the output power of the distributed power supply. Through the coordination and cooperation of the battery output and the other two distributed power generation units, the microgrid can achieve its autonomy and maximize the economy of the system operation. Thanks to our methodology, a better revenue and an enhanced flexible dispatching of the system were met in the grid-connected mode as well.
format Article
id doaj-art-a00b561ff6a54598b2d31f209fb010ca
institution Kabale University
issn 2090-0155
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Journal of Electrical and Computer Engineering
spelling doaj-art-a00b561ff6a54598b2d31f209fb010ca2025-02-03T01:07:29ZengWileyJournal of Electrical and Computer Engineering2090-01552022-01-01202210.1155/2022/5923568Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric VehicleSalma Sraidi0Mohamed Maaroufi1Research Electric Energy and CommandResearch Electric Energy and CommandThe ongoing research work on electric vehicles (EVs) as well as the growing concern around the world to ensure a pollution-free environment is sure to lead to a significant increase in the number of EVs in the near future. The electrification of automobiles is an inevitable trend of future development. However, the growth of EVs relies on several elements: autonomy, the charging practice and infrastructure, the price, and the high amount of energy needed for supplying EV. This tendency impacts several points in transportation such as the road infrastructure and electrical power network. The aim of this article is the integration of new energy power sources as a part of the microgrid (MG) to supply EV with dynamic wireless charging. The main goal is to establish an energy management strategy reducing the running cost. The purpose is suggested for two kinds of operation mode: relying only on the MG (island mode) or relying on the MG and the large grid (grid-connected). The optimization problem is solved on the basis of the particle swarm optimization (PSO) algorithm. We could note that the stability of the microgrid in the off-grid mode is better, when the load is close to the output power of the distributed power supply. Through the coordination and cooperation of the battery output and the other two distributed power generation units, the microgrid can achieve its autonomy and maximize the economy of the system operation. Thanks to our methodology, a better revenue and an enhanced flexible dispatching of the system were met in the grid-connected mode as well.http://dx.doi.org/10.1155/2022/5923568
spellingShingle Salma Sraidi
Mohamed Maaroufi
Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle
Journal of Electrical and Computer Engineering
title Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle
title_full Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle
title_fullStr Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle
title_full_unstemmed Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle
title_short Energy Management in the Microgrid and Its Optimal Planning for Supplying Wireless Charging Electric Vehicle
title_sort energy management in the microgrid and its optimal planning for supplying wireless charging electric vehicle
url http://dx.doi.org/10.1155/2022/5923568
work_keys_str_mv AT salmasraidi energymanagementinthemicrogridanditsoptimalplanningforsupplyingwirelesschargingelectricvehicle
AT mohamedmaaroufi energymanagementinthemicrogridanditsoptimalplanningforsupplyingwirelesschargingelectricvehicle